首页> 外文期刊>European journal of organic chemistry >Comparative studies of multi-photon induced emission by pyridine-based small molecular probes in biological media: Selective binding of bioactive molecules and in vitro imaging
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Comparative studies of multi-photon induced emission by pyridine-based small molecular probes in biological media: Selective binding of bioactive molecules and in vitro imaging

机译:吡啶基小分子探针在生物介质中多光子诱导发射的比较研究:生物活性分子的选择性结合和体外成像

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A new class of organic molecular probes (1-3) based on a 1,3-disubstituted diethynylbenzene core has been developed. Both 1 and 2 (with the esters of 1 replaced by diethylamides in 2) show good linear and three-photon induced photophysical properties with two-photon absorption cross-sections (185-210 cm~4sphoton~(-1)molecule~(-1)) that are suitable for biological applications in live specimens. The propeller π-conjugated systems of 3 (a C_3 analogue of 1) shows threefold enhancement for the two-photon absorption cross-section (650 cm~4sphoton ~(-1)molecule~(-1)). Solvatochromism was observed in the fluorescence spectra of all these molecular probes; in acidic medium (pH = 4-5) their fluorescence emissions are slightly blueshifted with a threefold enhancement in intensity relative to those observed under basic conditions (pH = 10-11). In the fluorometric titration study against a variety of bioactive small molecules, only 2 shows strong binding affinity (log K_B > 7) towards citrates and bicarbonates with approximately 30 nm redshift. The in vitro emission spectra of 2 obtained show the same emission upon addition of anions to the solution. The results of these studies could provide new molecular-design strategies for two-photo absorption (TPA) chromophores and new materials for two/multi-photon imaging in vitro. A new class of organic molecular probes has been developed, and the cell-permeable properties were improved dramatically by introducing diethylamide moieties. Only 2 shows strong emission enhancement uponbinding with citrates and bicarbonates. The emission spectra of 2 obtained in vitro show the same emission with citrate and hydrogencarbonate.
机译:基于1,3-二取代的二乙炔基苯核心的新型有机分子探针(1-3)已经开发出来。 1和2(在2中被1的酯替换为二乙酰胺)都显示出良好的线性和三光子诱导的光物理性质,具有两个光子吸收截面(185-210 cm〜4sphoton〜(-1)分子〜(- 1))适用于活体标本的生物学应用。 3的螺旋桨π共轭体系(C_3类似物为1)对双光子吸收截面(650 cm〜4sphoton〜(-1)分子〜(-1))表现出三倍增强。在所有这些分子探针的荧光光谱中均观察到溶剂变色。在酸性介质(pH = 4-5)中,其荧光发射相对于在碱性条件下(pH = 10-11)观察到的荧光发射略有蓝移,强度增强了三倍。在针对各种具有生物活性的小分子的荧光滴定研究中,只有2个显示对柠檬酸盐和碳酸氢盐具有约30 nm红移的强结合亲和力(log K_B> 7)。在将阴离子添加到溶液中后,获得的2的体外发射光谱显示出相同的发射。这些研究的结果可为双光吸收(TPA)生色团提供新的分子设计策略,并为双/多光子成像提供新的材料。已经开发出新型的有机分子探针,并且通过引入二乙酰胺部分极大地改善了细胞渗透性。与柠檬酸盐和碳酸氢盐结合后,只有2个显示出强烈的发射增强作用。体外获得的2的发射光谱显示出与柠檬酸盐和碳酸氢盐相同的发射。

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